Stem Cell Glycobiology Group, Materials Science, University of Manchester, Manchester, M1 7HS, UK.
Biochem Soc Trans. 2011 Jan;39(1):383-7. doi: 10.1042/BST0390383.
ES (embryonic stem) cell differentiation is dependent on the presence of HS (heparan sulfate). We have demonstrated that, during differentiation, the evolution of specific cell lineages is associated with particular patterns of GAG (glycosaminoglycan) expression. For example, different HS epitopes are synthesized during neural or mesodermal lineage formation. Cell lines mutant for various components of the HS biosynthetic pathway are selectively impaired in their differentiation, with lineage-specific effects observed for some lines. We have also observed that the addition of soluble GAG saccharides to cells, with or without cell-surface HS, can influence the pace and outcome of differentiation, again highlighting specific pattern requirements for particular lineages. We are combining this work with ongoing studies into the design of artificial cell environments where we have optimized three-dimensional scaffolds, generated by electrospinning or by the formation of hydrogels, for the culture of ES cells. By permeating these scaffolds with defined GAG oligosaccharides, we intend to control the mechanical environment of the cells (via the scaffold architecture) as well as their biological signalling environment (using the oligosaccharides). We predict that this will allow us to control ES cell pluripotency and differentiation in a three-dimensional setting, allowing the generation of differentiated cell types for use in drug discovery/testing or in therapeutics.
胚胎干细胞(ES)的分化依赖于硫酸乙酰肝素(HS)的存在。我们已经证明,在分化过程中,特定细胞谱系的进化与特定的糖胺聚糖(GAG)表达模式相关。例如,在神经或中胚层谱系形成过程中会合成不同的 HS 表位。HS 生物合成途径的各种成分发生突变的细胞系在分化过程中会受到选择性损伤,一些细胞系表现出谱系特异性效应。我们还观察到,向细胞添加可溶性 GAG 聚糖,无论是否存在细胞表面 HS,都可以影响分化的速度和结果,再次强调了特定谱系对特定模式的要求。我们将这项工作与正在进行的人工细胞环境设计研究相结合,我们已经优化了通过静电纺丝或水凝胶形成生成的用于 ES 细胞培养的三维支架。通过将定义的 GAG 寡糖渗透到这些支架中,我们旨在控制细胞的机械环境(通过支架结构)以及它们的生物信号环境(使用寡糖)。我们预测,这将使我们能够在三维环境中控制 ES 细胞的多能性和分化,从而生成用于药物发现/测试或治疗的分化细胞类型。